Josh T Cuperus

Josh T Cuperus

University of Washington

H-index: 22

North America-United States

About Josh T Cuperus

Josh T Cuperus, With an exceptional h-index of 22 and a recent h-index of 20 (since 2020), a distinguished researcher at University of Washington, specializes in the field of Cell Biology, Bioinformatics, microRNA, Genomics, small RNA.

His recent articles reflect a diverse array of research interests and contributions to the field:

Plant enhancers exhibit both cooperative and additive interactions among their functional elements

Florigen-producing cells express FPF1-LIKE PROTEIN 1 that accelerates flowering and stem growth in long days with sunlight red/far-red ratio in Arabidopsis

Impact on splicing in Saccharomyces cerevisiae of random 50-base sequences inserted into an intron

LTP2 hypomorphs show genotype‐by‐environment interaction in early seedling traits in Arabidopsis thaliana

Cooperativity and additivity in plant enhancers

Frontiers and techniques in plant gene regulation

De novo designed Hsp70 activator dissolves intracellular condensates

Arabidopsis and Maize Terminator Strength is Determined by GC Content, Polyadenylation Motifs and Cleavage Probability

Josh T Cuperus Information

University

Position

Research Assistant Professor Genome Sciences Department

Citations(all)

4160

Citations(since 2020)

1883

Cited By

3027

hIndex(all)

22

hIndex(since 2020)

20

i10Index(all)

23

i10Index(since 2020)

22

Email

University Profile Page

Google Scholar

Josh T Cuperus Skills & Research Interests

Cell Biology

Bioinformatics

microRNA

Genomics

small RNA

Top articles of Josh T Cuperus

Plant enhancers exhibit both cooperative and additive interactions among their functional elements

The Plant Cell

2024/3/21

Florigen-producing cells express FPF1-LIKE PROTEIN 1 that accelerates flowering and stem growth in long days with sunlight red/far-red ratio in Arabidopsis

bioRxiv

2024

Impact on splicing in Saccharomyces cerevisiae of random 50-base sequences inserted into an intron

RNA

2024/1/1

LTP2 hypomorphs show genotype‐by‐environment interaction in early seedling traits in Arabidopsis thaliana

New Phytologist

2024/1

Josh T Cuperus
Josh T Cuperus

H-Index: 15

Christine Queitsch
Christine Queitsch

H-Index: 25

Cooperativity and additivity in plant enhancers

bioRxiv

2023/11/22

Frontiers and techniques in plant gene regulation

2023/10/1

Josh T Cuperus
Josh T Cuperus

H-Index: 15

Christine Queitsch
Christine Queitsch

H-Index: 25

De novo designed Hsp70 activator dissolves intracellular condensates

bioRxiv

2023/9/19

Arabidopsis and Maize Terminator Strength is Determined by GC Content, Polyadenylation Motifs and Cleavage Probability

bioRxiv

2023/6/18

Features that Govern Terminator Strength in Plants

bioRxiv

2023/6/18

Substantial rDNA copy number reductions alter timing of development and produce variable tissue-specific phenotypes in C. elegans

Genetics

2023/5/2

Ribosomal DNA replication time coordinates completion of genome replication and anaphase in yeast

Cell reports

2023/3/28

AGO1 and HSP90 buffer different genetic variants in Arabidopsis thaliana

Genetics

2023/2/1

Christine Queitsch
Christine Queitsch

H-Index: 25

Josh T Cuperus
Josh T Cuperus

H-Index: 15

A Bioinformatic Investigation of Genetic Insulation Mechanisms in Plants

Journal of Biological Chemistry

2023/1/1

Single-cell genomics in plants: current state, future directions, and hurdles to overcome

2022/2/1

Josh T Cuperus
Josh T Cuperus

H-Index: 15

Effects of sequence motifs in the yeast 3′ untranslated region determined from massively parallel assays of random sequences

Genome Biology

2021/12

Andrew Savinov
Andrew Savinov

H-Index: 4

Josh T Cuperus
Josh T Cuperus

H-Index: 15

A single-cell view of the transcriptome during lateral root initiation in Arabidopsis thaliana

The Plant Cell

2021/7/1

Christine Queitsch
Christine Queitsch

H-Index: 25

Josh T Cuperus
Josh T Cuperus

H-Index: 15

The regulatory landscape of Arabidopsis thaliana roots at single-cell resolution

Nature communications

2021/6/7

Christine Queitsch
Christine Queitsch

H-Index: 25

Josh T Cuperus
Josh T Cuperus

H-Index: 15

Synthetic promoter designs enabled by a comprehensive analysis of plant core promoters

Nature Plants

2021/6

Josh T Cuperus
Josh T Cuperus

H-Index: 15

Christine Queitsch
Christine Queitsch

H-Index: 25

Coordination of genome replication and anaphase entry by rDNA copy number in S. cerevisiae

bioRxiv

2021/2/25

Identification of plant enhancers and their constituent elements by STARR-seq in tobacco leaves

The Plant Cell

2020/7/1

Josh T Cuperus
Josh T Cuperus

H-Index: 15

Christine Queitsch
Christine Queitsch

H-Index: 25

See List of Professors in Josh T Cuperus University(University of Washington)

Co-Authors

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